NAVRÁTILOVÁ, Polina, Jan EMMER, Tomáš TOMÁŠ, Luděk RYBA, Jan BURDA, Tomáš LOJA, Jana VEVERKOVÁ, Lucie VÁLKOVÁ and Monika PÁVKOVÁ GOLDBERGOVÁ. Plastic response of macrophages to metal ions and nanoparticles in time mimicking metal implant body environment. Environmental Science and Pollution Research. HEIDELBERG: SPRINGER HEIDELBERG, 2024, vol. 31, No 3, p. 4111-4129. ISSN 0944-1344. Available from: https://dx.doi.org/10.1007/s11356-023-31430-7.
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Basic information
Original name Plastic response of macrophages to metal ions and nanoparticles in time mimicking metal implant body environment
Authors NAVRÁTILOVÁ, Polina (643 Russian Federation, belonging to the institution), Jan EMMER (203 Czech Republic), Tomáš TOMÁŠ (203 Czech Republic, guarantor, belonging to the institution), Luděk RYBA (203 Czech Republic), Jan BURDA (203 Czech Republic), Tomáš LOJA (703 Slovakia, belonging to the institution), Jana VEVERKOVÁ (203 Czech Republic, belonging to the institution), Lucie VÁLKOVÁ (203 Czech Republic, belonging to the institution) and Monika PÁVKOVÁ GOLDBERGOVÁ (203 Czech Republic, belonging to the institution).
Edition Environmental Science and Pollution Research, HEIDELBERG, SPRINGER HEIDELBERG, 2024, 0944-1344.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 30404 Biomaterials
Country of publisher Germany
Confidentiality degree is not subject to a state or trade secret
WWW URL
Impact factor Impact factor: 5.800 in 2022
Organization unit Faculty of Medicine
Doi http://dx.doi.org/10.1007/s11356-023-31430-7
UT WoS 001125959900001
Keywords in English Metal toxicity; Implant debris; Nanoparticles; Metal ions; Macrophage; Polarization
Tags 14110518, podil, rivok
Tags International impact, Reviewed
Changed by Changed by: Mgr. Eva Dubská, učo 77638. Changed: 5/3/2024 12:54.
Abstract
The paradigm of using metal biomaterials could be viewed from two sides — treatment of wide spectrum of degenerative diseases, and debris release from materials. After implant insertion, metal nanoparticles (NPs) and ions are released not only upon the first contact with cells/tissues, but in continual manner, which is immediately recognized by immune cells. In this work, the effects of metal nanoparticles (TiO2, Ni) and ions (Ni2+, Co2+, Cr3+, Mo6+) on primary human M0 macrophages from the blood samples of osteoarthritic patients undergoing total arthroplasty were studied in order to monitor immunomodulatory effects on the cells in a real-time format. The highest NiNPs concentration of 10 µg/ml had no effect on any of macrophage parameters, while the Ni2+ ions cytotoxicity limit for the cells is 0.5 mM. The cytotoxic effects of higher Ni2+ concentration revealed mitochondrial network fragmentation leading to mitochondrial dysfunction, accompanied by increased lysosomal activity and changes in pro-apoptotic markers. The suppression of M2 cell formation ability was connected to presence of Ni2+ ions (0.5 mM) and TiO2NPs (10 µg/ml). The immunomodulatory effect of Mo6+ ions, controversially, inhibit the formation of the cells with M1 phenotype and potentiate the thread-like shape M2s with increased chaotic cell movement. To summarize, metal toxicity depends on the debris form. Both, metal ions and nanoparticles affect macrophage size, morphological and functional parameters, but the effect of ions is more complex and likely more harmful, which has potential impact on healing and determines post-implantation reactions.
Links
MUNI/A/1370/2022, interní kód MUName: Patofyziologie vybraných komplexních nemocí od molekulární do systémovou úroveň
Investor: Masaryk University, Pathophysiology of selected complex diseases from molecular to systemic level
NU20-08-00149, research and development projectName: Multicentrické hodnocení hypersenzitivní reakce u pacientů indikovaných k totální náhradě kloubu včetně hodnocení důvodů reimplanace
Investor: Ministry of Health of the CR, Subprogram 1 - standard
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